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Optimization of Fabrication Parameters To Produce Chitosan-Tripoly phosphate Nanoparticles for Delivery of Tea Catechins

机译:制备参数的壳聚糖三聚磷酸钠纳米粒子传递茶儿茶素的制备参数的优化

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This work investigated the polyanion-initiated gelation process in fabricating chitosan-tripolyphosphate (CS-TPP) nanoparticles intended to be used as carriers for delivering tea catechins. The results demonstrated that the particle size and surface charge of CS-TPP nanoparticles could be controlled by fabrication conditions. For preparation of CS-TPP nanoparticles loaded with tea catechins, the effects of modulating conditions including contact time between CS and tea catechins, CS molecular mass, CS concentration, CS-TPP mass ratio, initial pH value of CS solution, and concentration of tea catechins on encapsulation efficiency and the release profile of tea catechins in vitro were examined systematically. The study found that the encapsulation efficiency of tea catechins in CS-TPP nanoparticles ranged from 24 to 53%. In addition, FT-IR analysis showed that the covalent bonding and hydrogen bonding between tea catechins and CS occurred during the formation of CS-TPP nanoparticles loaded with tea catechins. Furthermore, studies on the release profile of tea catechins in vitro demonstrated that the controlled release of tea catechins using CS-TPP nanoparticles was achievable.
机译:这项工作研究了聚阴离子引发的凝胶化工艺,该工艺用于制备脱乙酰壳多糖三聚磷酸盐(CS-TPP)纳米颗粒,该纳米颗粒旨在用作传递茶儿茶素的载体。结果表明,CS-TPP纳米粒子的粒径和表面电荷可以通过制造条件来控制。为了制备负载茶儿茶素的CS-TPP纳米颗粒,调节条件的影响包括CS和茶儿茶素之间的接触时间,CS分子量,CS浓度,CS-TPP质量比,CS溶液的初始pH值以及茶的浓度儿茶素对包封效率和茶儿茶素体外释放特性的研究。研究发现,茶儿茶素在CS-TPP纳米颗粒中的包封效率为24%至53%。另外,FT-IR分析表明茶儿茶素和CS之间的共价键和氢键在负载茶儿茶素的CS-TPP纳米颗粒形成期间发生。此外,对茶儿茶素体外释放曲线的研究表明,使用CS-TPP纳米颗粒可控制茶儿茶素的释放。

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